Target intelligence / Profile preview

Sodium-dependent phosphate transporter 2 (SLC20A2) (PiT-2)

Target
PiT-2
Molecular classification
Transporter, Solute carrier family
01

Overview

Sodium-dependent phosphate transporter 2 (PiT-2), encoded by the SLC20A2 gene, is a transmembrane protein essential for maintaining inorganic phosphate homeostasis by facilitating the sodium-coupled uptake of phosphate into cells (UniProt: P41701). It is widely expressed but plays a particularly crucial role in the brain, where it regulates phosphate concentrations in the cerebrospinal fluid and prevents the formation of calcium phosphate deposits (PubMed: 22327515). Mutations in SLC20A2 are the most common cause of Primary Familial Brain Calcification (PFBC), a condition leading to progressive neurological symptoms such as parkinsonism, dystonia, and cognitive decline (NCBI Gene: 6575). While PiT-2 is a significant target for understanding and potentially treating ectopic calcification, current pharmacological options are limited to non-specific inhibitors like foscarnet, which can interfere with its transport activity (PubMed: 21233445). Therapeutic strategies targeting PiT-2 must carefully balance local phosphate regulation with systemic mineral metabolism to avoid adverse effects on bone and kidney function.

Other names
SLC20A2Solute carrier family 20 member 2Gibbon ape leukemia virus receptor 2GLVR2Ram-1Pit2
02

Mechanism of action

Competitive inhibition of sodium-dependent phosphate transport across the plasma membrane.

03

Biological functions

Phosphate homeostasisSodium-dependent phosphate transportBrain calcification regulationBone mineralization
04

Disease associations

Primary Familial Brain CalcificationFahr's diseaseVascular calcificationNeurodegenerative disease
05

Safety considerations

Systemic phosphate imbalanceRisk of ectopic calcificationPotential neurotoxicity
06

Interacting drugs

Foscarnet

1 more in the full profile.

07

Biomarkers

SLC20A2 mutation statusBrain calcification volume (CT/MRI)Cerebrospinal fluid phosphate levels

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